| Literature DB >> 30347145 |
Julien Rosselgong1,2, Maud Chemin1,2, Cédric Cabral Almada1,2, Gauvin Hemery1,2, Jean-Michel Guigner3, Guillaume Chollet4, Gilles Labat5, Denilson Da Silva Perez5, Frédérique Ham-Pichavant1,2, Etienne Grau1,2, Stéphane Grelier1,2, Sébastien Lecommandoux1,2, Henri Cramail1,2.
Abstract
This work aims at designing functional biomaterials through selective chemical modification of xylan from beechwood. Acidic hydrolysis of xylan led to well-defined oligomers with an average of six xylose units per chain and with an aldehyde group at the reductive end. Reductive amination was performed on this aldehyde end group to introduce an azide reactive group. "Click chemistry" was then applied to couple these hydrophilic xylans moieties with different hydrophobic fatty acid methyl esters that were previously functionalized with complementary alkyne functions. The resulting amphiphilic bio-based conjugates were then self-assembled using three different methods, namely, direct solubilization, thin-film rehydration/extrusion, and microfluidics. Well-defined micelles and vesicles were obtained, and their high loading capacity with propiconazole as an antifungal active molecule was shown. The resulting vesicles loaded with propiconazole in a microfluidic process proved to significantly improve the antifungal activity of propiconazole, demonstrating the high potential of such xylan-based amphiphiles.Entities:
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Year: 2018 PMID: 30347145 DOI: 10.1021/acs.biomac.8b01210
Source DB: PubMed Journal: Biomacromolecules ISSN: 1525-7797 Impact factor: 6.988